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关于将温鲍姆-吉吉生物热方程推广到不等尺寸微血管的研究;近场与局部平均组织温度之间的关系。

On the generalization of the Weinbaum-Jiji bioheat equation to microvessels of unequal size; the relation between the near field and local average tissue temperatures.

作者信息

Zhu M, Weinbaum S, Jiji L M, Lemons D E

机构信息

Department of Mechanical Engineering, City College of the City University of New York, N.Y. 10031.

出版信息

J Biomech Eng. 1988 Feb;110(1):74-81. doi: 10.1115/1.3108409.

DOI:10.1115/1.3108409
PMID:3347027
Abstract

The extensive series of experiments reported in Lemons et al. [1] show that measureable local tissue temperature fluctuations are observed primarily in the vicinity of the 100-500 micron countercurrent vessels of the microcirculation and thus strongly support the basic hypothesis in the new bioheat equation of Weinbaum and Jiji [2] that these countercurrent microvessels are the principal determinants of local blood-tissue heat transfer. However, the detailed temperature profiles in the vicinity of these vessels indicate that large asymmetries in the local temperature field can result from the significant differences in size between the countercurrent artery and vein. Using the superposition techniques of Baish et al. [9], the paper first presents a solution to the classic problem of an unequal countercurrent heat exchanger with heat loss to the far field. This solution is then used to generalize the Weinbaum-Jiji bioheat equation and the conductivity tensor that appears in this equation to vessels of unequal size. An asymptotic analysis has also been developed to elucidate the relationship between the near field temperature of the artery-vein pair and the local average tissue temperature. This analysis is used to rigorously prove the closure approximation relating the local arterial-venous temperature difference and the mean tissue temperature gradient which had been derived in [2] using a more heuristic approach.

摘要

莱蒙斯等人[1]报道的一系列广泛实验表明,可测量的局部组织温度波动主要在微循环中100 - 500微米的逆流血管附近观察到,因此有力地支持了温鲍姆和吉吉[2]新生物热方程中的基本假设,即这些逆流微血管是局部血液 - 组织热传递的主要决定因素。然而,这些血管附近的详细温度分布表明,逆流动脉和静脉之间大小的显著差异会导致局部温度场出现较大不对称性。利用贝什等人[9]的叠加技术,本文首先给出了一个不等逆流热交换器向远场散热的经典问题的解。然后,该解被用于推广温鲍姆 - 吉吉生物热方程以及该方程中出现的电导率张量,以适用于不等尺寸的血管。还开展了渐近分析,以阐明动静脉对的近场温度与局部平均组织温度之间的关系。该分析用于严格证明局部动静脉温差与平均组织温度梯度之间的封闭近似关系,这一关系在[2]中是用更启发式的方法推导出来的。

相似文献

1
On the generalization of the Weinbaum-Jiji bioheat equation to microvessels of unequal size; the relation between the near field and local average tissue temperatures.关于将温鲍姆-吉吉生物热方程推广到不等尺寸微血管的研究;近场与局部平均组织温度之间的关系。
J Biomech Eng. 1988 Feb;110(1):74-81. doi: 10.1115/1.3108409.
2
The matching of thermal fields surrounding countercurrent microvessels and the closure approximation in the Weinbaum-Jiji equation.
J Biomech Eng. 1989 Nov;111(4):271-5. doi: 10.1115/1.3168378.
3
The bleed off perfusion term in the Weinbaum-Jiji bioheat equation.温鲍姆-吉吉生物热方程中的泄流灌注项。
J Biomech Eng. 1992 Nov;114(4):539-42. doi: 10.1115/1.2894108.
4
A theoretical model for peripheral tissue heat transfer using the bioheat equation of Weinbaum and Jiji.
J Biomech Eng. 1987 Feb;109(1):72-8. doi: 10.1115/1.3138646.
5
An evaluation of the Weinbaum-Jiji bioheat equation for normal and hyperthermic conditions.对正常和高温条件下的温鲍姆-吉吉生物热方程的评估。
J Biomech Eng. 1990 Feb;112(1):80-7. doi: 10.1115/1.2891130.
6
Discussion of papers by Wissler and Baish et al. concerning the Weinbaum-Jiji bioheat equation.关于维斯拉(Wissler)和拜什(Baish)等人有关温鲍姆 - 吉吉(Weinbaum-Jiji)生物热方程的论文讨论。
J Biomech Eng. 1987 Aug;109(3):234-7. doi: 10.1115/1.3138674.
7
Bioheat transfer in a branching countercurrent network during hyperthermia.热疗期间分支逆流网络中的生物热传递。
J Biomech Eng. 1989 Nov;111(4):263-70. doi: 10.1115/1.3168377.
8
Analysis of the Weinbaum-Jiji model of blood flow in the canine kidney cortex for self-heated thermistors.用于自热式热敏电阻的犬肾皮质血流的温鲍姆-吉吉模型分析。
J Biomech Eng. 1994 May;116(2):201-7. doi: 10.1115/1.2895720.
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A new simplified bioheat equation for the effect of blood flow on local average tissue temperature.
J Biomech Eng. 1985 May;107(2):131-9. doi: 10.1115/1.3138533.
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A new fundamental bioheat equation for muscle tissue: Part I--Blood perfusion term.一种用于肌肉组织的新的基本生物热方程:第一部分——血液灌注项。
J Biomech Eng. 1997 Aug;119(3):278-88. doi: 10.1115/1.2796092.

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